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Design of a polarization-insensitive superconducting nanowire single photon detector with high detection efficiency

机译:具有高检测效率的极化不敏感超导纳米线单光子探测器的设计

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Superconducting nanowire single photon detectors (SNSPDs) deliver superior performance over their competitors in the near-infrared regime. However, these detectors have an intrinsic polarization dependence on the incident wave because of their one-dimensional meander structure. In this paper, we propose an approach to eliminate the polarization sensitivity of SNSPDs by using near-field optics to increase the absorption of SNSPDs under transverse magnetic (TM) illumination. In addition, an optical cavity is added to our SNSPD to obtain nearly perfect absorption of the incident wave. Numerical simulations show that the maximum absorption of a designed SNSPD can reach 96% at 1550 nm, and indicate that the absorption difference between transverse electric (TE) and TM polarization is less than 0.5% across a wavelength window of 300 nm. Our work provides the first demonstration of the possibility of designing a polarization-insensitive and highly efficient SNSPD without performing device symmetry improvements.
机译:超导纳米线单光子探测器(SNSPDS)在近红外制度中对其竞争对手提供卓越的性能。然而,由于其一维曲折结构,这些探测器对入射波具有内在偏振依赖性。在本文中,我们提出了一种通过使用近场光学器件消除SNSPD的极化敏感性,以增加横向磁性(TM)照明下SNSPD的吸收。另外,将光学腔添加到我们的SNSPD中以获得几乎完美的入射波吸收。数值模拟表明,设计的SNSPD的最大吸收可以在1550nm处达到96%,并且表明横向电气(TE)和TM偏振之间的吸收差异小于300nm波长窗口的0.5%。我们的作品提供了第一次演示了在不执行设备对称改进的情况下设计极化不敏感和高效的SNSPD的可能性。

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